• 제목/요약/키워드: Rotor position Estimation

검색결과 210건 처리시간 0.031초

브러시리스 직류전동기의 안전성을 고려한 Hall Sensor 신호 추정 알고리즘 설계 (The Estimation Algorithm Design of Hall Sensor Signal Considering Safety of BLDC Motor)

  • 윤용호
    • 전기학회논문지
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    • 제65권11호
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    • pp.1894-1899
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    • 2016
  • In this paper, because the position sensor represents the important factor in BLDC (Brushless DC) motor drives, BLDC motor is necessary that the three Hall-sensors evenly be distributed around the stator circumference in case of the 3 phase motor. The Hall-sensor is set up in this motor to detect the main flux from the rotor. So the output signal from Hall-sensor is used to drive IGBT to control the stator winding current. However, in case of breakdown Hall sensor, we research that the estimation algorithm of Hall sensor signal to detect rotor position and for the speed feedback signals with BLDC motor whose six stator and two rotor designed. In addition, this paper presents a sensorless speed control of BLDC Motor using terminal voltage of the one phase. Rotor position information is extracted by indirectly sensing the back EMF from only one of the three terminal voltages for a three-phase BLDC motor.

중성점전압보상 방식을 이용한 브러시리스직류전동기의 회전자위치 추정 (A Rotor Position Estimation of Brushless DC Motors using Neutral Voltage Compensation Method)

  • 송중호
    • 전력전자학회논문지
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    • 제9권5호
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    • pp.491-497
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    • 2004
  • 본 논문은 브러시리스직류전동기의 새로운 회전자위치추정 방법에 관한 것이다. 회전자 위치추정이 부정확하게 이루어졌을 때, 역기전력과 상전류 사이의 위상차가 나타나고 이는 다시 전동기의 토크리플을 일으킨다는 사실은 알려져 있다. 이러한 추정오차를 줄이기 위하여 인버터의 정상모드 기간 중에 나타나는 중성점전압을 기반으로 하는 새로운 방법을 제안하고 있다. 이 중성점전압이 효과적인 회전자 위치 추정오차의 한 지표임을 확인하고, 중성점전압의 발생, 획득방법, 보상방법 등을 다루고 있다. 본 알고리즘은 전동기 단자전압센서와 단일 직류링크 전류센서 만을 이용하여 실현할 수 있으며, 관련 시뮬레이션 및 실험결과는 그 타당성을 보여주고 있다.

전류변화율을 이용한 토로이달 SRM의 초기위치 경출 방법 (Initial Rotor Position Detection of a Toroidal SRM Using the Rate of Change of Current)

  • 양형열;임영철
    • 대한전기학회논문지:시스템및제어부문D
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    • 제54권1호
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    • pp.26-32
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    • 2005
  • Rotor position information is essential in the operation of the switched reluctance motor(SRM) drive for generation the phase current switching signals. When an incremental encoder is used as a rotor position sensor, the initial rotor position can not be detected. Some sensorless rotor position estimation methods also have the same problem. In these systems, to initially align the rotor, the forced alignment method has a delay and reverse rotation before the motor can start. Therefore it can not be acceptable for unidirectional drive systems. So the forced alignment method is not desirable in all drive systems and the research on the SRM drives should be directed to a system without rotor alignment. In this paper, a new detection method of initial rotor position using the rate of change of current is suggested. Firstly, di/dt versus θ/sub R/ reference table, which is the relation between the rate of change of current and rotor position, is generated and then the squared Euclidean distance method is used to estimate the rotor position based on the table. The simulated and experimental results are presented demonstrating the feasibility and accuracy of this method.

SRM의 센서리스 제어를 위한 인덕턴스 추론기법 (Inductance Reasoning Method for Sensorless Control of an SRM)

  • 안진우;박성준;김태형
    • 전력전자학회논문지
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    • 제8권5호
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    • pp.427-434
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    • 2003
  • 본 논문은 스위치드 릴럭턴스 전동기(SRM)에서 회전자위치검출의 새로운 방법을 다루었다. 전동기에 대한 센서리스방식의 제어기법들은 상전류의 측정과 비여자 구간에서의 펄스전압인가를 포함하고 있다. 회전자의 위치를 추정 할 수 있는 윈리는 펄스 전류를 통한 인턱턴스의 검출을 기포로 한다. 이 센서리스 제어법은 회전자의 위치검출 연산이 매우 간단하여 전속도구간에서 운전이 가능하여 드라이브 시스템을 효율적으로 구성할 수 있다. 제안한 방식을 이용하여 구동시스템을 구성하고 실험을 통하여 검증하였다.

초기위치 추정 및 파라미터 계측을 선행하여 순시무효전력을 이용한 IPMSM의 센서리스 제어 (Sensorless Control of IPMS on an Instantaneous Reactive Power Preceding Initial Position Estimation and Parameter Measurement)

  • 김원석;정우택;김영석
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2005년도 춘계학술대회 논문집 전기기기 및 에너지변환시스템부문
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    • pp.207-209
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    • 2005
  • Recently, the use of IPMSM is coming to be active, in many industrial applications. In sensorless drive of IPMSM, it is important to know the exact information of the initial rotor position, because the wrong estimation of the initial rotor position brings about the decrease of the starting torque, or a temporary reverse revolution, In addition, PMSM is necessary to use the accurate information of the inductance for the precise torque control owing to the reluctance torque. In this paper presents initial rotor position estimation method and, measure method of the each-axis inductance. And to minimize the speed estimations error, the estimated speeds are compensated by using an instantaneous reactive power in synchronously rotating reference frame.

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동기형 릴럭턴스 전동기의 단순구조형 센서리스 제어의 저속운전 (Low Speed Operation of Simplified Sensorless Control of Synchronous Reluctance Motor)

  • 안준선;이주
    • 대한전기학회논문지:전기기기및에너지변환시스템부문B
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    • 제55권2호
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    • pp.61-68
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    • 2006
  • Many researchers have worked for the sensorless control of SynRM in recent years. However they commonly requires large calculations which induced from its complexity. For low cost application as like home appliance, it is difficult to utilize because of the cost problem. Therefore, it is necessary to introduce simplified sensorless control scheme that is composed of least calculation to estimate the rotor position. In this paper the sensorless control is performed using the characteristics of SynRM structure in which the linkage flux varies with rotor position, so the rotor position can be detected by the change of linkage flux. The estimation of linkage flux can be acquired from the integration of the motor terminal voltage which is commonly used method for the reliability of the estimation. However this estimation method has demerits in low speed operation therefore in that region the motor terminal voltage is compensated by the phase current. A digital simulation (MATLAB) and experiment were performed to confirm the adequacy of the proposed control scheme.

Rotor Initial Position Estimation Based on sDFT for Electrically Excited Synchronous Motors

  • Yuan, Qing-Qing;Wu, Xiao-Jie;Dai, Peng
    • Journal of Power Electronics
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    • 제14권3호
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    • pp.564-571
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    • 2014
  • Rotor initial position is an important factor affecting the control performance of electrically excited synchronous motors. This study presents a novel method for estimating rotor initial position based on sliding discrete Fourier transform (sDFT). By injecting an ac excitation into the rotor winding, an induced voltage is generated in stator windings. Through this voltage, the stator flux can be obtained using a pure integral voltage model. Considering the influence from a dc bias and an integral initial value, we adopt the sDFT to extract the fundamental flux component. A quadrant identification model is designed to realize the accurate estimation of the rotor initial position. The sDFT and high-pass filter, DFT, are compared in detail, and the contrast between dc excitation and ac injection is determined. Simulation and experimental results verify that this type of novel method can eliminate the influence of dc bias and other adverse factors, as well as provide a basis for the control of motor drives.

새로운 유도전동기 벡터제어 기법 (A new vector control method for induction motor)

  • 변윤섭;왕종배;백종현;박현준
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2000년도 추계학술대회 논문집
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    • pp.680-687
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    • 2000
  • In this paper we present a new vector control scheme for induction motor. An exact knowledge of the rotor flux position is essential for a high-performance vector control. The position of the rotor flux is measured in the direct scheme or estimated in the indirect schemes. Since the estimation of the flux position requires a priori knowledge of the induction motor parameters, the indirect schemes are machine parameter dependent. The rotor resistance and stator resistance among the parameters change with temperature. Variations in the parameters of induction machine cause deterioration of both the steady state and dynamic operation of the induction motor drive. Several methods have been presented to minimize the consequences of parameter sensitivity in indirect scheme. In this paper new estimation scheme of rotor flux position is presented to eliminate sensitivity due to resistance change with temperature. Simulation results are used to verify the performance of the proposed vector control scheme.

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공간전압 벡터제어를 통한 유도전동기의 새로운 벡터제어성능연구 (A new vector control performance for induction motor with SVPWM)

  • 변윤섭;장동욱
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2001년도 하계학술대회 논문집 D
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    • pp.2246-2248
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    • 2001
  • This paper presents a new vector control scheme for induction motor. An exact knowledge of the rotor flux position is essential for a high-performance vector control. The position of the rotor flux is measured in the direct schemes and estimated in the indirect schemes. Since the estimation of the flux position requires a priori knowledge of the induction motor parameters, the indirect schemes are machine parameter dependent. The rotor and stator resistance among the parameters change with temperature. Variations in the parameters of induction machine cause deterioration of both the steady state and dynamic operation of the induction motor drive. Several methods have presented to minimize the consequences of parameter sensitivity in indirect scheme. In this paper, new estimation scheme of rotor flux position is presented to eliminate sensitivity due to variation in the resistance. The simulation is executed to verify the proposed vector control performance and to compare its performance with that of indirect and direct vector control.

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SRM 제어방법들에 대한 적응관측기들의 분석 (Study on the analysis Adaptive Observers to Control SRM Control Meathod)

  • 신재화
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2007년도 학술대회 논문집 전문대학교육위원
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    • pp.160-164
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    • 2007
  • MRAS observer, which is based on adaptive control theory, estimates speed and position by using optimal observer gains on the basis of Lyapunov stability theory. However, in case of MRAS theory, position estimation error is in existence because of non-linearity for inductance variation and limit cycles for position estimation. The adaptive sliding observer based on the variable structure control theory estimates the speed and position for zero of estimation error by using the sliding surface equal to the error between speed and position estimation. The binary observer estimates the rotor speed and rotor flux with alleviation of the high-frequency chattering, and retains the benefits achieved in the conventional sliding observer, such as robustness to parameter and disturbance variations. The speed and position sensorless control of SRM under the load and inductance variation is verified by the experimental results.

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